1 /* AT-SPI - Assistive Technology Service Provider Interface
3 * (Gnome Accessibility Project; http://developer.gnome.org/projects/gap)
5 * Copyright 2001, 2003 Sun Microsystems Inc.,
6 * Copyright 2001, 2002 Ximian, Inc.
8 * This library is free software; you can redistribute it and/or
9 * modify it under the terms of the GNU Library General Public
10 * License as published by the Free Software Foundation; either
11 * version 2 of the License, or (at your option) any later version.
13 * This library is distributed in the hope that it will be useful,
14 * but WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * Library General Public License for more details.
18 * You should have received a copy of the GNU Library General Public
19 * License along with this library; if not, write to the
20 * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
21 * Boston, MA 02111-1307, USA.
24 /* deviceeventcontroller.c: implement the DeviceEventController interface */
30 #undef SPI_KEYEVENT_DEBUG
38 #include <X11/extensions/XTest.h>
39 #include <X11/XKBlib.h>
42 #include <X11/keysymdef.h>
45 #include <X11/Xproto.h>
47 #include <X11/extensions/Xevie.h>
48 #endif /* HAVE_XEVIE */
52 #include <gdk/gdkx.h> /* TODO: hide dependency (wrap in single porting file) */
53 #include <gdk/gdkkeysyms.h>
55 #include <droute/droute.h>
60 #include "de-marshaller.h"
62 #include "deviceeventcontroller.h"
63 #include "reentrant-list.h"
65 KeySym ucs2keysym (long ucs);
66 long keysym2ucs(KeySym keysym);
68 #define CHECK_RELEASE_DELAY 20
69 #define BIT(c, x) (c[x/8]&(1<<(x%8)))
70 static guint check_release_handler = 0;
71 static Accessibility_DeviceEvent pressed_event;
72 static SpiDEController *saved_controller;
73 static void wait_for_release_event (XEvent *event, SpiDEController *controller);
75 /* Our parent Gtk object type */
76 #define PARENT_TYPE G_TYPE_OBJECT
78 /* A pointer to our parent object class */
79 static int spi_error_code = 0;
80 static GdkPoint last_mouse_pos_static = {0, 0};
81 static GdkPoint *last_mouse_pos = &last_mouse_pos_static;
82 static unsigned int mouse_mask_state = 0;
83 static unsigned int mouse_button_mask =
84 Button1Mask | Button2Mask | Button3Mask | Button4Mask | Button5Mask;
85 static unsigned int key_modifier_mask =
86 Mod1Mask | Mod2Mask | Mod3Mask | Mod4Mask | Mod5Mask | ShiftMask | LockMask | ControlMask | SPI_KEYMASK_NUMLOCK;
87 static unsigned int _numlock_physical_mask = Mod2Mask; /* a guess, will be reset */
89 static GQuark spi_dec_private_quark = 0;
90 static XModifierKeymap* xmkeymap = NULL;
92 static gboolean have_mouse_listener = FALSE;
93 static gboolean have_mouse_event_listener = FALSE;
95 static int (*x_default_error_handler) (Display *display, XErrorEvent *error_event);
99 SPI_DEVICE_TYPE_MOUSE,
100 SPI_DEVICE_TYPE_LAST_DEFINED
101 } SpiDeviceTypeCategory;
104 guint ref_count : 30;
105 guint pending_add : 1;
106 guint pending_remove : 1;
108 Accessibility_ControllerEventMask mod_mask;
109 dbus_uint32_t key_val; /* KeyCode */
110 } DEControllerGrabMask;
115 SpiDeviceTypeCategory type;
117 } DEControllerListener;
120 DEControllerListener listener;
123 Accessibility_ControllerEventMask mask;
124 Accessibility_EventListenerMode *mode;
125 } DEControllerKeyListener;
128 unsigned int last_press_keycode;
129 unsigned int last_release_keycode;
130 struct timeval last_press_time;
131 struct timeval last_release_time;
133 int xkb_major_extension_opcode;
134 int xkb_base_event_code;
135 int xkb_base_error_code;
136 unsigned int xkb_latch_mask;
137 unsigned int pending_xkb_mod_relatch_mask;
139 KeyCode reserved_keycode;
140 KeySym reserved_keysym;
141 guint reserved_reset_timeout;
142 } DEControllerPrivateData;
144 static void spi_controller_register_with_devices (SpiDEController *controller);
145 static gboolean spi_controller_update_key_grabs (SpiDEController *controller,
146 Accessibility_DeviceEvent *recv);
147 static gboolean spi_controller_register_device_listener (SpiDEController *controller,
148 DEControllerListener *l);
149 static gboolean spi_device_event_controller_forward_key_event (SpiDEController *controller,
150 const XEvent *event);
151 static void spi_controller_deregister_device_listener (SpiDEController *controller,
152 DEControllerListener *listener);
153 static void spi_deregister_controller_key_listener (SpiDEController *controller,
154 DEControllerKeyListener *key_listener);
155 static gboolean spi_controller_notify_mouselisteners (SpiDEController *controller,
156 const Accessibility_DeviceEvent *event);
158 static gboolean spi_eventtype_seq_contains_event (dbus_uint32_t types,
159 const Accessibility_DeviceEvent *event);
160 static gboolean spi_clear_error_state (void);
161 static gboolean spi_dec_poll_mouse_moved (gpointer data);
162 static gboolean spi_dec_poll_mouse_moving (gpointer data);
163 static gboolean spi_dec_poll_mouse_idle (gpointer data);
165 #define spi_get_display() GDK_DISPLAY()
167 G_DEFINE_TYPE(SpiDEController, spi_device_event_controller, G_TYPE_OBJECT)
169 /* Private methods */
171 spi_dbus_add_disconnect_match (DBusConnection *bus, const char *name)
173 char *match = g_strdup_printf ("interface=%s,member=NameOwnerChanged,arg0=%s", DBUS_INTERFACE_DBUS, name);
177 dbus_error_init (&error);
178 dbus_bus_add_match (bus, match, &error);
180 return !dbus_error_is_set (&error);
186 spi_dbus_remove_disconnect_match (DBusConnection *bus, const char *name)
188 char *match = g_strdup_printf ("interface=%s,member=NameOwnerChanged,arg0=%s", DBUS_INTERFACE_DBUS, name);
192 dbus_error_init (&error);
193 dbus_bus_remove_match (bus, match, &error);
195 return !dbus_error_is_set (&error);
201 keysym_mod_mask (KeySym keysym, KeyCode keycode)
203 /* we really should use XKB and look directly at the keymap */
204 /* this is very inelegant */
205 Display *display = spi_get_display ();
206 unsigned int mods_rtn = 0;
207 unsigned int retval = 0;
210 if (XkbLookupKeySym (display, keycode, 0, &mods_rtn, &sym_rtn) &&
211 (sym_rtn == keysym)) {
214 else if (XkbLookupKeySym (display, keycode, ShiftMask, &mods_rtn, &sym_rtn) &&
215 (sym_rtn == keysym)) {
218 else if (XkbLookupKeySym (display, keycode, Mod2Mask, &mods_rtn, &sym_rtn) &&
219 (sym_rtn == keysym)) {
222 else if (XkbLookupKeySym (display, keycode, Mod3Mask, &mods_rtn, &sym_rtn) &&
223 (sym_rtn == keysym)) {
226 else if (XkbLookupKeySym (display, keycode,
227 ShiftMask | Mod2Mask, &mods_rtn, &sym_rtn) &&
228 (sym_rtn == keysym)) {
229 retval = (Mod2Mask | ShiftMask);
231 else if (XkbLookupKeySym (display, keycode,
232 ShiftMask | Mod3Mask, &mods_rtn, &sym_rtn) &&
233 (sym_rtn == keysym)) {
234 retval = (Mod3Mask | ShiftMask);
236 else if (XkbLookupKeySym (display, keycode,
237 ShiftMask | Mod4Mask, &mods_rtn, &sym_rtn) &&
238 (sym_rtn == keysym)) {
239 retval = (Mod4Mask | ShiftMask);
247 spi_dec_replace_map_keysym (DEControllerPrivateData *priv, KeyCode keycode, KeySym keysym)
250 Display *dpy = spi_get_display ();
252 if (!(desc = XkbGetMap (dpy, XkbAllMapComponentsMask, XkbUseCoreKbd)))
254 fprintf (stderr, "ERROR getting map\n");
258 if (desc && desc->map)
260 gint offset = desc->map->key_sym_map[keycode].offset;
261 desc->map->syms[offset] = keysym;
265 fprintf (stderr, "Error changing key map: empty server structure\n");
267 XkbSetMap (dpy, XkbAllMapComponentsMask, desc);
269 * FIXME: the use of XkbChangeMap, and the reuse of the priv->xkb_desc structure,
270 * would be far preferable.
271 * HOWEVER it does not seem to work using XFree 4.3.
273 /* XkbChangeMap (dpy, priv->xkb_desc, priv->changes); */
276 XkbFreeKeyboard (desc, 0, TRUE);
285 spi_dec_reset_reserved (gpointer data)
287 DEControllerPrivateData *priv = data;
288 spi_dec_replace_map_keysym (priv, priv->reserved_keycode, priv->reserved_keysym);
289 priv->reserved_reset_timeout = 0;
294 keycode_for_keysym (SpiDEController *controller, long keysym, unsigned int *modmask)
297 keycode = XKeysymToKeycode (spi_get_display (), (KeySym) keysym);
300 DEControllerPrivateData *priv = (DEControllerPrivateData *)
301 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
302 /* if there's no keycode available, fix it */
303 if (spi_dec_replace_map_keysym (priv, priv->reserved_keycode, keysym))
305 keycode = priv->reserved_keycode;
307 * queue a timer to restore the old keycode. Ugly, but required
308 * due to races / asynchronous X delivery.
309 * Long-term fix is to extend the X keymap here instead of replace entries.
311 priv->reserved_reset_timeout = g_timeout_add (500, spi_dec_reset_reserved, priv);
317 *modmask = keysym_mod_mask (keysym, keycode);
321 static DEControllerGrabMask *
322 spi_grab_mask_clone (DEControllerGrabMask *grab_mask)
324 DEControllerGrabMask *clone = g_new (DEControllerGrabMask, 1);
326 memcpy (clone, grab_mask, sizeof (DEControllerGrabMask));
328 clone->ref_count = 1;
329 clone->pending_add = TRUE;
330 clone->pending_remove = FALSE;
336 spi_grab_mask_free (DEControllerGrabMask *grab_mask)
342 spi_grab_mask_compare_values (gconstpointer p1, gconstpointer p2)
344 DEControllerGrabMask *l1 = (DEControllerGrabMask *) p1;
345 DEControllerGrabMask *l2 = (DEControllerGrabMask *) p2;
353 return ((l1->mod_mask != l2->mod_mask) || (l1->key_val != l2->key_val));
358 spi_dec_set_unlatch_pending (SpiDEController *controller, unsigned mask)
360 DEControllerPrivateData *priv =
361 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
363 if (priv->xkb_latch_mask) fprintf (stderr, "unlatch pending! %x\n",
364 priv->xkb_latch_mask);
366 priv->pending_xkb_mod_relatch_mask |= priv->xkb_latch_mask;
370 spi_dec_clear_unlatch_pending (SpiDEController *controller)
372 DEControllerPrivateData *priv =
373 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
374 priv->xkb_latch_mask = 0;
377 static void emit(SpiDEController *controller, const char *interface, const char *name, int a1, int a2)
379 DBusMessage *signal = NULL;
380 DBusMessageIter iter, iter_variant;
382 const char *minor = "";
383 const char *path = SPI_DBUS_PATH_DESKTOP;
385 signal = dbus_message_new_signal (path, interface, name);
387 dbus_message_iter_init_append (signal, &iter);
389 dbus_message_iter_append_basic (&iter, DBUS_TYPE_STRING, &minor);
390 dbus_message_iter_append_basic (&iter, DBUS_TYPE_UINT32, &a1);
391 dbus_message_iter_append_basic (&iter, DBUS_TYPE_UINT32, &a2);
392 dbus_message_iter_open_container (&iter, DBUS_TYPE_VARIANT, "i", &iter_variant);
393 dbus_message_iter_append_basic (&iter_variant, DBUS_TYPE_INT32, &nil);
394 dbus_message_iter_close_container (&iter, &iter_variant);
396 dbus_connection_send (controller->bus, signal, NULL);
400 spi_dec_button_update_and_emit (SpiDEController *controller,
403 Accessibility_DeviceEvent mouse_e;
404 gchar event_detail[24];
405 gboolean is_consumed = FALSE;
407 if ((mask_return & mouse_button_mask) !=
408 (mouse_mask_state & mouse_button_mask))
410 int button_number = 0;
411 gboolean is_down = False;
413 if (!(mask_return & Button1Mask) &&
414 (mouse_mask_state & Button1Mask))
416 mouse_mask_state &= ~Button1Mask;
419 else if ((mask_return & Button1Mask) &&
420 !(mouse_mask_state & Button1Mask))
422 mouse_mask_state |= Button1Mask;
426 else if (!(mask_return & Button2Mask) &&
427 (mouse_mask_state & Button2Mask))
429 mouse_mask_state &= ~Button2Mask;
432 else if ((mask_return & Button2Mask) &&
433 !(mouse_mask_state & Button2Mask))
435 mouse_mask_state |= Button2Mask;
439 else if (!(mask_return & Button3Mask) &&
440 (mouse_mask_state & Button3Mask))
442 mouse_mask_state &= ~Button3Mask;
445 else if ((mask_return & Button3Mask) &&
446 !(mouse_mask_state & Button3Mask))
448 mouse_mask_state |= Button3Mask;
452 else if (!(mask_return & Button4Mask) &&
453 (mouse_mask_state & Button4Mask))
455 mouse_mask_state &= ~Button4Mask;
458 else if ((mask_return & Button4Mask) &&
459 !(mouse_mask_state & Button4Mask))
461 mouse_mask_state |= Button4Mask;
465 else if (!(mask_return & Button5Mask) &&
466 (mouse_mask_state & Button5Mask))
468 mouse_mask_state &= ~Button5Mask;
471 else if ((mask_return & Button5Mask) &&
472 !(mouse_mask_state & Button5Mask))
474 mouse_mask_state |= Button5Mask;
480 fprintf (stderr, "Button %d %s\n",
481 button_number, (is_down) ? "Pressed" : "Released");
483 snprintf (event_detail, 22, "%d%c", button_number,
484 (is_down) ? 'p' : 'r');
485 /* TODO: FIXME distinguish between physical and
488 mouse_e.type = (is_down) ?
489 Accessibility_BUTTON_PRESSED_EVENT :
490 Accessibility_BUTTON_RELEASED_EVENT;
491 mouse_e.id = button_number;
492 mouse_e.hw_code = button_number;
493 mouse_e.modifiers = (dbus_uint16_t) mouse_mask_state;
494 mouse_e.timestamp = 0;
495 mouse_e.event_string = "";
496 mouse_e.is_text = FALSE;
498 spi_controller_notify_mouselisteners (controller,
502 dbus_uint32_t x = last_mouse_pos->x, y = last_mouse_pos->y;
503 emit(controller, SPI_DBUS_INTERFACE_EVENT_MOUSE, "Button", x, y);
506 spi_dec_set_unlatch_pending (controller, mask_return);
518 spi_dec_mouse_check (SpiDEController *controller,
519 int *x, int *y, gboolean *moved)
521 int win_x_return,win_y_return;
522 unsigned int mask_return;
523 Window root_return, child_return;
524 Display *display = spi_get_display ();
527 XQueryPointer(display, DefaultRootWindow (display),
528 &root_return, &child_return,
530 &win_x_return, &win_y_return, &mask_return);
532 * Since many clients grab the pointer, and X goes an automatic
533 * pointer grab on mouse-down, we often must detect mouse button events
534 * by polling rather than via a button grab.
535 * The while loop (rather than if) is used since it's possible that
536 * multiple buttons have changed state since we last checked.
538 if (mask_return != mouse_mask_state)
540 while (spi_dec_button_update_and_emit (controller, mask_return));
543 if (*x != last_mouse_pos->x || *y != last_mouse_pos->y)
545 // TODO: combine these two signals?
546 dbus_uint32_t ix = *x, iy = *y;
547 emit(controller, SPI_DBUS_INTERFACE_EVENT_MOUSE, "Abs", ix, iy);
548 ix -= last_mouse_pos->x;
549 iy -= last_mouse_pos->y;
550 emit(controller, SPI_DBUS_INTERFACE_EVENT_MOUSE, "Rel", ix, iy);
551 last_mouse_pos->x = *x;
552 last_mouse_pos->y = *y;
564 spi_dec_emit_modifier_event (SpiDEController *controller, guint prev_mask,
567 dbus_uint32_t d1, d2;
570 fprintf (stderr, "MODIFIER CHANGE EVENT! %x to %x\n",
571 prev_mask, current_mask);
574 /* set bits for the virtual modifiers like NUMLOCK */
575 if (prev_mask & _numlock_physical_mask)
576 prev_mask |= SPI_KEYMASK_NUMLOCK;
577 if (current_mask & _numlock_physical_mask)
578 current_mask |= SPI_KEYMASK_NUMLOCK;
580 d1 = prev_mask & key_modifier_mask;
581 d2 = current_mask & key_modifier_mask;
582 emit(controller, SPI_DBUS_INTERFACE_EVENT_KEYBOARD, "Modifiers", d1, d2);
586 spi_dec_poll_mouse_moved (gpointer data)
588 SpiDEController *controller = SPI_DEVICE_EVENT_CONTROLLER(data);
593 mask_return = spi_dec_mouse_check (controller, &x, &y, &moved);
595 if ((mask_return & key_modifier_mask) !=
596 (mouse_mask_state & key_modifier_mask))
598 spi_dec_emit_modifier_event (controller, mouse_mask_state, mask_return);
599 mouse_mask_state = mask_return;
606 spi_dec_poll_mouse_idle (gpointer data)
608 if (!have_mouse_event_listener && !have_mouse_listener)
610 else if (!spi_dec_poll_mouse_moved (data))
614 g_timeout_add (20, spi_dec_poll_mouse_moving, data);
620 spi_dec_poll_mouse_moving (gpointer data)
622 if (!have_mouse_event_listener && !have_mouse_listener)
624 else if (spi_dec_poll_mouse_moved (data))
628 g_timeout_add (100, spi_dec_poll_mouse_idle, data);
633 #ifdef WE_NEED_UGRAB_MOUSE
635 spi_dec_ungrab_mouse (gpointer data)
637 Display *display = spi_get_display ();
640 XUngrabButton (spi_get_display (), AnyButton, AnyModifier,
641 XDefaultRootWindow (spi_get_display ()));
648 spi_dec_init_mouse_listener (SpiDEController *dec)
651 Display *display = spi_get_display ();
655 if (XGrabButton (display, AnyButton, AnyModifier,
656 gdk_x11_get_default_root_xwindow (),
657 True, ButtonPressMask | ButtonReleaseMask,
658 GrabModeSync, GrabModeAsync, None, None) != Success) {
660 fprintf (stderr, "WARNING: could not grab mouse buttons!\n");
664 XSync (display, False);
666 fprintf (stderr, "mouse buttons grabbed\n");
673 * Eventually we can use this to make the marshalling of mask types
674 * more sane, but for now we just use this to detect
675 * the use of 'virtual' masks such as numlock and convert them to
676 * system-specific mask values (i.e. ModMask).
679 static Accessibility_ControllerEventMask
680 spi_dec_translate_mask (Accessibility_ControllerEventMask mask)
682 Accessibility_ControllerEventMask tmp_mask;
683 gboolean has_numlock;
685 has_numlock = (mask & SPI_KEYMASK_NUMLOCK);
689 tmp_mask = mask ^ SPI_KEYMASK_NUMLOCK;
690 tmp_mask |= _numlock_physical_mask;
696 static DEControllerKeyListener *
697 spi_dec_key_listener_new (const char *bus_name,
700 const Accessibility_ControllerEventMask mask,
701 const dbus_uint32_t types,
702 const Accessibility_EventListenerMode *mode)
704 DEControllerKeyListener *key_listener = g_new0 (DEControllerKeyListener, 1);
705 key_listener->listener.bus_name = g_strdup(bus_name);
706 key_listener->listener.path = g_strdup(path);
707 key_listener->listener.type = SPI_DEVICE_TYPE_KBD;
708 key_listener->keys = keys;
709 key_listener->mask = spi_dec_translate_mask (mask);
710 key_listener->listener.types = types;
713 key_listener->mode = (Accessibility_EventListenerMode *) g_malloc(sizeof(Accessibility_EventListenerMode));
714 memcpy(key_listener->mode, mode, sizeof(*mode));
717 key_listener->mode = NULL;
720 g_print ("new listener, with mask %x, is_global %d, keys %p (%d)\n",
721 (unsigned int) key_listener->mask,
722 (int) (mode ? mode->global : 0),
723 (void *) key_listener->keys,
724 (int) (key_listener->keys ? g_slist_length(key_listener->keys) : 0));
730 static DEControllerListener *
731 spi_dec_listener_new (const char *bus_name,
735 DEControllerListener *listener = g_new0 (DEControllerListener, 1);
736 listener->bus_name = g_strdup(bus_name);
737 listener->path = g_strdup(path);
738 listener->type = SPI_DEVICE_TYPE_MOUSE;
739 listener->types = types;
743 static DEControllerListener *
744 spi_listener_clone (DEControllerListener *listener)
746 DEControllerListener *clone = g_new0 (DEControllerListener, 1);
747 clone->bus_name = g_strdup (listener->bus_name);
748 clone->path = g_strdup (listener->path);
749 clone->type = listener->type;
750 clone->types = listener->types;
754 static GSList *keylist_clone (GSList *s)
759 for (l = s; l; l = g_slist_next(l))
761 Accessibility_KeyDefinition *kd = (Accessibility_KeyDefinition *)g_malloc(sizeof(Accessibility_KeyDefinition));
764 Accessibility_KeyDefinition *kds = (Accessibility_KeyDefinition *)l->data;
765 kd->keycode = kds->keycode;
766 kd->keysym = kds->keysym;
767 kd->keystring = g_strdup(kds->keystring);
768 d = g_slist_append(d, kd);
774 static DEControllerKeyListener *
775 spi_key_listener_clone (DEControllerKeyListener *key_listener)
777 DEControllerKeyListener *clone = g_new0 (DEControllerKeyListener, 1);
778 clone->listener.bus_name = g_strdup (key_listener->listener.bus_name);
779 clone->listener.path = g_strdup (key_listener->listener.path);
780 clone->listener.type = SPI_DEVICE_TYPE_KBD;
781 clone->keys = keylist_clone (key_listener->keys);
782 clone->mask = key_listener->mask;
783 clone->listener.types = key_listener->listener.types;
784 if (key_listener->mode)
786 clone->mode = (Accessibility_EventListenerMode *)g_malloc(sizeof(Accessibility_EventListenerMode));
787 if (clone->mode) memcpy(clone->mode, key_listener->mode, sizeof(Accessibility_EventListenerMode));
794 static void keylist_free(GSList *keys)
798 for (l = keys; l; l = g_slist_next(l))
800 Accessibility_KeyDefinition *kd = (Accessibility_KeyDefinition *)l->data;
801 g_free(kd->keystring);
808 spi_key_listener_data_free (DEControllerKeyListener *key_listener)
810 keylist_free(key_listener->keys);
811 if (key_listener->mode) g_free(key_listener->mode);
812 g_free (key_listener);
816 spi_key_listener_clone_free (DEControllerKeyListener *clone)
818 spi_key_listener_data_free (clone);
822 spi_listener_clone_free (DEControllerListener *clone)
824 g_free (clone->path);
825 g_free (clone->bus_name);
830 spi_dec_listener_free (DEControllerListener *listener)
832 g_free (listener->bus_name);
833 g_free (listener->path);
834 if (listener->type == SPI_DEVICE_TYPE_KBD)
835 spi_key_listener_data_free ((DEControllerKeyListener *) listener);
839 _register_keygrab (SpiDEController *controller,
840 DEControllerGrabMask *grab_mask)
844 l = g_list_find_custom (controller->keygrabs_list, grab_mask,
845 spi_grab_mask_compare_values);
848 DEControllerGrabMask *cur_mask = l->data;
850 cur_mask->ref_count++;
851 if (cur_mask->pending_remove)
853 cur_mask->pending_remove = FALSE;
858 controller->keygrabs_list =
859 g_list_prepend (controller->keygrabs_list,
860 spi_grab_mask_clone (grab_mask));
865 _deregister_keygrab (SpiDEController *controller,
866 DEControllerGrabMask *grab_mask)
870 l = g_list_find_custom (controller->keygrabs_list, grab_mask,
871 spi_grab_mask_compare_values);
875 DEControllerGrabMask *cur_mask = l->data;
877 cur_mask->ref_count--;
878 if (cur_mask->ref_count <= 0)
880 cur_mask->pending_remove = TRUE;
886 handle_keygrab (SpiDEController *controller,
887 DEControllerKeyListener *key_listener,
888 void (*process_cb) (SpiDEController *controller,
889 DEControllerGrabMask *grab_mask))
891 DEControllerGrabMask grab_mask = { 0 };
893 grab_mask.mod_mask = key_listener->mask;
894 if (g_slist_length (key_listener->keys) == 0) /* special case means AnyKey/AllKeys */
896 grab_mask.key_val = AnyKey;
898 fprintf (stderr, "AnyKey grab!");
900 process_cb (controller, &grab_mask);
906 for (l = key_listener->keys; l; l = g_slist_next(l))
908 Accessibility_KeyDefinition *keydef = l->data;
909 long int key_val = keydef->keysym;
910 /* X Grabs require keycodes, not keysyms */
911 if (keydef->keystring && keydef->keystring[0])
913 key_val = XStringToKeysym(keydef->keystring);
917 key_val = XKeysymToKeycode (spi_get_display (), (KeySym) key_val);
921 key_val = keydef->keycode;
923 grab_mask.key_val = key_val;
924 process_cb (controller, &grab_mask);
930 spi_controller_register_global_keygrabs (SpiDEController *controller,
931 DEControllerKeyListener *key_listener)
933 handle_keygrab (controller, key_listener, _register_keygrab);
934 if (controller->xevie_display == NULL)
935 return spi_controller_update_key_grabs (controller, NULL);
941 spi_controller_deregister_global_keygrabs (SpiDEController *controller,
942 DEControllerKeyListener *key_listener)
944 handle_keygrab (controller, key_listener, _deregister_keygrab);
945 if (controller->xevie_display == NULL)
946 spi_controller_update_key_grabs (controller, NULL);
950 spi_controller_register_device_listener (SpiDEController *controller,
951 DEControllerListener *listener)
953 DEControllerKeyListener *key_listener;
955 switch (listener->type) {
956 case SPI_DEVICE_TYPE_KBD:
957 key_listener = (DEControllerKeyListener *) listener;
959 controller->key_listeners = g_list_prepend (controller->key_listeners,
961 spi_dbus_add_disconnect_match (controller->bus, key_listener->listener.bus_name);
962 if (key_listener->mode->global)
964 return spi_controller_register_global_keygrabs (controller, key_listener);
969 case SPI_DEVICE_TYPE_MOUSE:
970 controller->mouse_listeners = g_list_prepend (controller->mouse_listeners, listener);
971 if (!have_mouse_listener)
973 have_mouse_listener = TRUE;
974 if (!have_mouse_event_listener)
975 g_timeout_add (100, spi_dec_poll_mouse_idle, controller->registry);
977 spi_dbus_add_disconnect_match (controller->bus, listener->bus_name);
986 Accessibility_DeviceEventListener_NotifyEvent(SpiDEController *controller,
987 SpiRegistry *registry,
988 DEControllerListener *listener,
989 const Accessibility_DeviceEvent *key_event)
991 DBusMessage *message = dbus_message_new_method_call(listener->bus_name,
993 SPI_DBUS_INTERFACE_DEVICE_EVENT_LISTENER,
996 dbus_bool_t consumed = FALSE;
998 dbus_error_init(&error);
999 if (spi_dbus_marshal_deviceEvent(message, key_event))
1001 // TODO: Evaluate performance: perhaps rework this whole architecture
1002 // to avoid blocking calls
1003 DBusMessage *reply = dbus_connection_send_with_reply_and_block(controller->bus, message, 1000, &error);
1007 dbus_error_init(&error);
1008 dbus_message_get_args(reply, &error, DBUS_TYPE_BOOLEAN, &consumed, DBUS_TYPE_INVALID);
1009 dbus_message_unref(reply);
1012 dbus_message_unref(message);
1017 spi_controller_notify_mouselisteners (SpiDEController *controller,
1018 const Accessibility_DeviceEvent *event)
1021 GSList *notify = NULL, *l2;
1022 GList **listeners = &controller->mouse_listeners;
1023 gboolean is_consumed;
1024 #ifdef SPI_KEYEVENT_DEBUG
1025 gboolean found = FALSE;
1032 for (l = *listeners; l; l = l->next)
1034 DEControllerListener *listener = l->data;
1036 if (spi_eventtype_seq_contains_event (listener->types, event))
1038 /* we clone (don't dup) the listener, to avoid refcount inc. */
1039 notify = g_slist_prepend (notify,
1040 spi_listener_clone (listener));
1041 #ifdef SPI_KEYEVENT_DEBUG
1047 #ifdef SPI_KEYEVENT_DEBUG
1050 g_print ("no match for event\n");
1054 is_consumed = FALSE;
1055 for (l2 = notify; l2 && !is_consumed; l2 = l2->next)
1057 DEControllerListener *listener = l2->data;
1059 is_consumed = Accessibility_DeviceEventListener_NotifyEvent (controller, controller->registry, listener, event);
1061 spi_listener_clone_free ((DEControllerListener *) l2->data);
1064 for (; l2; l2 = l2->next)
1066 DEControllerListener *listener = l2->data;
1067 spi_listener_clone_free (listener);
1068 /* clone doesn't have its own ref, so don't use spi_device_listener_free */
1071 g_slist_free (notify);
1074 if (is_consumed) g_message ("consumed\n");
1080 spi_device_event_controller_forward_mouse_event (SpiDEController *controller,
1083 Accessibility_DeviceEvent mouse_e;
1084 gchar event_detail[24];
1085 gboolean is_consumed = FALSE;
1086 gboolean xkb_mod_unlatch_occurred;
1087 XButtonEvent *xbutton_event = (XButtonEvent *) xevent;
1088 dbus_uint32_t ix, iy;
1090 int button = xbutton_event->button;
1092 unsigned int mouse_button_state = xbutton_event->state;
1097 mouse_button_state |= Button1Mask;
1100 mouse_button_state |= Button2Mask;
1103 mouse_button_state |= Button3Mask;
1106 mouse_button_state |= Button4Mask;
1109 mouse_button_state |= Button5Mask;
1113 last_mouse_pos->x = ((XButtonEvent *) xevent)->x_root;
1114 last_mouse_pos->y = ((XButtonEvent *) xevent)->y_root;
1117 fprintf (stderr, "mouse button %d %s (%x)\n",
1118 xbutton_event->button,
1119 (xevent->type == ButtonPress) ? "Press" : "Release",
1120 mouse_button_state);
1122 snprintf (event_detail, 22, "%d%c", button,
1123 (xevent->type == ButtonPress) ? 'p' : 'r');
1125 /* TODO: FIXME distinguish between physical and logical buttons */
1126 mouse_e.type = (xevent->type == ButtonPress) ?
1127 Accessibility_BUTTON_PRESSED_EVENT :
1128 Accessibility_BUTTON_RELEASED_EVENT;
1129 mouse_e.id = button;
1130 mouse_e.hw_code = button;
1131 mouse_e.modifiers = (dbus_uint16_t) xbutton_event->state;
1132 mouse_e.timestamp = (dbus_uint32_t) xbutton_event->time;
1133 mouse_e.event_string = "";
1134 mouse_e.is_text = FALSE;
1135 if ((mouse_button_state & mouse_button_mask) !=
1136 (mouse_mask_state & mouse_button_mask))
1138 if ((mouse_mask_state & key_modifier_mask) !=
1139 (mouse_button_state & key_modifier_mask))
1140 spi_dec_emit_modifier_event (controller,
1141 mouse_mask_state, mouse_button_state);
1142 mouse_mask_state = mouse_button_state;
1144 spi_controller_notify_mouselisteners (controller, &mouse_e);
1145 ix = last_mouse_pos->x;
1146 iy = last_mouse_pos->y;
1147 /* TODO - Work out which part of the spec this emit is fulfilling */
1148 //emit(controller, SPI_DBUS_INTERFACE_EVENT_MOUSE, "button", event_detail, ix, iy);
1151 xkb_mod_unlatch_occurred = (xevent->type == ButtonPress ||
1152 xevent->type == ButtonRelease);
1154 /* if client wants to consume this event, and XKB latch state was
1155 * unset by this button event, we reset it
1157 if (is_consumed && xkb_mod_unlatch_occurred)
1158 spi_dec_set_unlatch_pending (controller, mouse_mask_state);
1160 XAllowEvents (spi_get_display (),
1161 (is_consumed) ? SyncPointer : ReplayPointer,
1165 static GdkFilterReturn
1166 global_filter_fn (GdkXEvent *gdk_xevent, GdkEvent *event, gpointer data)
1168 XEvent *xevent = gdk_xevent;
1169 SpiDEController *controller;
1170 DEControllerPrivateData *priv;
1171 Display *display = spi_get_display ();
1172 controller = SPI_DEVICE_EVENT_CONTROLLER (data);
1173 priv = (DEControllerPrivateData *)
1174 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
1176 if (xevent->type == MappingNotify)
1179 if (xevent->type == KeyPress || xevent->type == KeyRelease)
1181 if (controller->xevie_display == NULL)
1183 gboolean is_consumed;
1186 spi_device_event_controller_forward_key_event (controller, xevent);
1193 n_events = XPending (display);
1195 #ifdef SPI_KEYEVENT_DEBUG
1196 g_print ("Number of events pending: %d\n", n_events);
1198 for (i = 0; i < n_events; i++)
1200 XNextEvent (display, &next_event);
1201 if (next_event.type != KeyPress &&
1202 next_event.type != KeyRelease)
1203 g_warning ("Unexpected event type %d in queue", next_event.type);
1206 XAllowEvents (display, AsyncKeyboard, CurrentTime);
1208 XUngrabKeyboard (display, CurrentTime);
1212 if (xevent->type == KeyPress)
1213 wait_for_release_event (xevent, controller);
1214 XAllowEvents (display, ReplayKeyboard, CurrentTime);
1218 return GDK_FILTER_CONTINUE;
1220 if (xevent->type == ButtonPress || xevent->type == ButtonRelease)
1222 spi_device_event_controller_forward_mouse_event (controller, xevent);
1224 if (xevent->type == priv->xkb_base_event_code)
1226 XkbAnyEvent * xkb_ev = (XkbAnyEvent *) xevent;
1227 /* ugly but probably necessary...*/
1228 XSynchronize (display, TRUE);
1230 if (xkb_ev->xkb_type == XkbStateNotify)
1232 XkbStateNotifyEvent *xkb_snev =
1233 (XkbStateNotifyEvent *) xkb_ev;
1234 /* check the mouse, to catch mouse events grabbed by
1235 * another client; in case we should revert this XKB delatch
1237 if (!priv->pending_xkb_mod_relatch_mask)
1241 spi_dec_mouse_check (controller, &x, &y, &moved);
1243 /* we check again, since the previous call may have
1244 changed this flag */
1245 if (priv->pending_xkb_mod_relatch_mask)
1247 unsigned int feedback_mask;
1248 #ifdef SPI_XKB_DEBUG
1249 fprintf (stderr, "relatching %x\n",
1250 priv->pending_xkb_mod_relatch_mask);
1252 /* temporarily turn off the latch bell, if it's on */
1253 XkbGetControls (display,
1254 XkbAccessXFeedbackMask,
1256 feedback_mask = priv->xkb_desc->ctrls->ax_options;
1257 if (feedback_mask & XkbAX_StickyKeysFBMask)
1259 XkbControlsChangesRec changes = {XkbAccessXFeedbackMask,
1261 priv->xkb_desc->ctrls->ax_options
1262 &= ~(XkbAX_StickyKeysFBMask);
1263 XkbChangeControls (display, priv->xkb_desc, &changes);
1265 /* TODO: account for lock as well as latch */
1266 XkbLatchModifiers (display,
1268 priv->pending_xkb_mod_relatch_mask,
1269 priv->pending_xkb_mod_relatch_mask);
1270 if (feedback_mask & XkbAX_StickyKeysFBMask)
1272 XkbControlsChangesRec changes = {XkbAccessXFeedbackMask,
1274 priv->xkb_desc->ctrls->ax_options = feedback_mask;
1275 XkbChangeControls (display, priv->xkb_desc, &changes);
1277 #ifdef SPI_XKB_DEBUG
1278 fprintf (stderr, "relatched %x\n",
1279 priv->pending_xkb_mod_relatch_mask);
1281 priv->pending_xkb_mod_relatch_mask = 0;
1285 priv->xkb_latch_mask = xkb_snev->latched_mods;
1288 XSynchronize (display, FALSE);
1291 return GDK_FILTER_CONTINUE;
1295 _spi_controller_device_error_handler (Display *display, XErrorEvent *error)
1297 if (error->error_code == BadAccess)
1299 g_message ("Could not complete key grab: grab already in use.\n");
1300 spi_error_code = BadAccess;
1305 return (*x_default_error_handler) (display, error);
1310 spi_controller_register_with_devices (SpiDEController *controller)
1312 DEControllerPrivateData *priv;
1313 int event_base, error_base, major_version, minor_version;
1315 priv = (DEControllerPrivateData *) g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
1316 if (XTestQueryExtension (spi_get_display(), &event_base, &error_base, &major_version, &minor_version))
1318 XTestGrabControl (spi_get_display (), True);
1321 /* calls to device-specific implementations and routines go here */
1322 /* register with: keyboard hardware code handler */
1323 /* register with: (translated) keystroke handler */
1325 priv->have_xkb = XkbQueryExtension (spi_get_display (),
1326 &priv->xkb_major_extension_opcode,
1327 &priv->xkb_base_event_code,
1328 &priv->xkb_base_error_code, NULL, NULL);
1332 guint64 reserved = 0;
1333 priv->xkb_desc = XkbGetMap (spi_get_display (), XkbKeySymsMask, XkbUseCoreKbd);
1334 XkbSelectEvents (spi_get_display (),
1336 XkbStateNotifyMask, XkbStateNotifyMask);
1337 _numlock_physical_mask = XkbKeysymToModifiers (spi_get_display (),
1339 for (i = priv->xkb_desc->max_key_code; i >= priv->xkb_desc->min_key_code; --i)
1341 if (priv->xkb_desc->map->key_sym_map[i].kt_index[0] == XkbOneLevelIndex)
1343 if (XKeycodeToKeysym (spi_get_display (), i, 0) != 0)
1345 /* don't use this one if there's a grab client! */
1346 gdk_error_trap_push ();
1347 XGrabKey (spi_get_display (), i, 0,
1348 gdk_x11_get_default_root_xwindow (),
1350 GrabModeSync, GrabModeSync);
1351 XSync (spi_get_display (), TRUE);
1352 XUngrabKey (spi_get_display (), i, 0,
1353 gdk_x11_get_default_root_xwindow ());
1354 if (!gdk_error_trap_pop ())
1364 priv->reserved_keycode = reserved;
1365 priv->reserved_keysym = XKeycodeToKeysym (spi_get_display (), reserved, 0);
1369 priv->reserved_keycode = XKeysymToKeycode (spi_get_display (), XK_numbersign);
1370 priv->reserved_keysym = XK_numbersign;
1372 #ifdef SPI_RESERVED_DEBUG
1374 sym = XKeycodeToKeysym (spi_get_display (), reserved, 0);
1375 fprintf (stderr, "%x\n", sym);
1376 fprintf (stderr, "setting the reserved keycode to %d (%s)\n",
1378 XKeysymToString (XKeycodeToKeysym (spi_get_display (),
1383 gdk_window_add_filter (NULL, global_filter_fn, controller);
1385 gdk_window_set_events (gdk_get_default_root_window (),
1386 GDK_KEY_PRESS_MASK | GDK_KEY_RELEASE_MASK);
1388 x_default_error_handler = XSetErrorHandler (_spi_controller_device_error_handler);
1392 spi_key_set_contains_key (GSList *key_set,
1393 const Accessibility_DeviceEvent *key_event)
1402 g_print ("null key set!\n");
1407 len = g_slist_length (key_set);
1409 if (len == 0) /* special case, means "all keys/any key" */
1412 g_print ("anykey\n");
1417 for (l = key_set,i = 0; l; l = g_slist_next(l),i++)
1419 Accessibility_KeyDefinition *kd = l->data;
1420 #ifdef SPI_KEYEVENT_DEBUG
1421 g_print ("key_set[%d] event = %d, code = %d; key_event %d, code %d, string %s\n",
1425 (int) key_event->id,
1426 (int) key_event->hw_code,
1427 key_event->event_string);
1429 if (kd->keysym == (dbus_uint32_t) key_event->id)
1433 if (kd->keycode == (dbus_uint32_t) key_event->hw_code)
1437 if (key_event->event_string && key_event->event_string[0] &&
1438 !strcmp (kd->keystring, key_event->event_string))
1448 spi_eventtype_seq_contains_event (dbus_uint32_t types,
1449 const Accessibility_DeviceEvent *event)
1451 if (types == 0) /* special case, means "all events/any event" */
1456 return (types & (1 << event->type));
1460 spi_key_event_matches_listener (const Accessibility_DeviceEvent *key_event,
1461 DEControllerKeyListener *listener,
1462 dbus_bool_t is_system_global)
1464 if (((key_event->modifiers & 0xFF) == (dbus_uint16_t) (listener->mask & 0xFF)) &&
1465 spi_key_set_contains_key (listener->keys, key_event) &&
1466 spi_eventtype_seq_contains_event (listener->listener.types, key_event) &&
1467 (is_system_global == listener->mode->global))
1478 spi_controller_notify_keylisteners (SpiDEController *controller,
1479 Accessibility_DeviceEvent *key_event,
1480 dbus_bool_t is_system_global)
1483 GSList *notify = NULL, *l2;
1484 GList **key_listeners = &controller->key_listeners;
1485 gboolean is_consumed;
1492 /* set the NUMLOCK event mask bit if appropriate: see bug #143702 */
1493 if (key_event->modifiers & _numlock_physical_mask)
1494 key_event->modifiers |= SPI_KEYMASK_NUMLOCK;
1496 for (l = *key_listeners; l; l = l->next)
1498 DEControllerKeyListener *key_listener = l->data;
1500 if (spi_key_event_matches_listener (key_event, key_listener, is_system_global))
1502 /* we clone (don't dup) the listener, to avoid refcount inc. */
1503 notify = g_slist_prepend (notify,
1504 spi_key_listener_clone (key_listener));
1508 #ifdef SPI_KEYEVENT_DEBUG
1511 g_print ("no match for event\n");
1515 is_consumed = FALSE;
1516 for (l2 = notify; l2 && !is_consumed; l2 = l2->next)
1518 DEControllerKeyListener *key_listener = l2->data;
1520 is_consumed = Accessibility_DeviceEventListener_NotifyEvent (controller, controller->registry, &key_listener->listener, key_event) &&
1521 key_listener->mode->preemptive;
1523 spi_key_listener_clone_free (key_listener);
1526 for (; l2; l2 = l2->next)
1528 DEControllerKeyListener *key_listener = l2->data;
1529 spi_key_listener_clone_free (key_listener);
1530 /* clone doesn't have its own ref, so don't use spi_dec_listener_free */
1533 g_slist_free (notify);
1536 if (is_consumed) g_message ("consumed\n");
1542 spi_clear_error_state (void)
1544 gboolean retval = spi_error_code != 0;
1549 static Accessibility_DeviceEvent
1550 spi_keystroke_from_x_key_event (XKeyEvent *x_key_event)
1552 Accessibility_DeviceEvent key_event;
1554 const int cbuf_bytes = 20;
1558 nbytes = XLookupString (x_key_event, cbuf, cbuf_bytes, &keysym, NULL);
1559 key_event.id = (dbus_int32_t)(keysym);
1560 key_event.hw_code = (dbus_int16_t) x_key_event->keycode;
1561 if (((XEvent *) x_key_event)->type == KeyPress)
1563 key_event.type = Accessibility_KEY_PRESSED_EVENT;
1567 key_event.type = Accessibility_KEY_RELEASED_EVENT;
1569 key_event.modifiers = (dbus_uint16_t)(x_key_event->state);
1570 key_event.is_text = FALSE;
1574 key_event.event_string = g_strdup ("space");
1577 key_event.event_string = g_strdup ("Tab");
1580 key_event.event_string = g_strdup ("Backspace");
1583 key_event.event_string = g_strdup ("Return");
1586 key_event.event_string = g_strdup ("Home");
1589 key_event.event_string = g_strdup ("Page_Down");
1592 key_event.event_string = g_strdup ("Page_Up");
1595 key_event.event_string = g_strdup ("F1");
1598 key_event.event_string = g_strdup ("F2");
1601 key_event.event_string = g_strdup ("F3");
1604 key_event.event_string = g_strdup ("F4");
1607 key_event.event_string = g_strdup ("F5");
1610 key_event.event_string = g_strdup ("F6");
1613 key_event.event_string = g_strdup ("F7");
1616 key_event.event_string = g_strdup ("F8");
1619 key_event.event_string = g_strdup ("F9");
1622 key_event.event_string = g_strdup ("F10");
1625 key_event.event_string = g_strdup ("F11");
1628 key_event.event_string = g_strdup ("F12");
1631 key_event.event_string = g_strdup ("End");
1634 key_event.event_string = g_strdup ("Escape");
1637 key_event.event_string = g_strdup ("Up");
1640 key_event.event_string = g_strdup ("Down");
1643 key_event.event_string = g_strdup ("Left");
1646 key_event.event_string = g_strdup ("Right");
1652 cbuf[nbytes] = '\0'; /* OK since length is cbuf_bytes+1 */
1653 key_event.event_string = g_strdup (cbuf);
1654 c = keysym2ucs (keysym);
1655 if (c > 0 && !g_unichar_iscntrl (c))
1657 key_event.is_text = TRUE;
1658 /* incorrect for some composed chars? */
1663 key_event.event_string = g_strdup ("");
1667 key_event.timestamp = (dbus_uint32_t) x_key_event->time;
1668 #ifdef SPI_KEYEVENT_DEBUG
1670 char *pressed_str = "pressed";
1671 char *released_str = "released";
1674 if (key_event.type == Accessibility_KEY_PRESSED_EVENT)
1675 state_ptr = pressed_str;
1677 state_ptr = released_str;
1680 "Key %lu %s (%c), modifiers %d; string=%s [%x] %s\n",
1681 (unsigned long) keysym,
1683 keysym ? (int) keysym : '*',
1684 (int) x_key_event->state,
1685 key_event.event_string,
1686 key_event.event_string[0],
1687 (key_event.is_text == TRUE) ? "(text)" : "(not text)");
1691 fprintf (stderr, "%s%c\n",
1692 (x_key_event->state & Mod1Mask)?"Alt-":"",
1693 ((x_key_event->state & ShiftMask)^(x_key_event->state & LockMask))?
1694 g_ascii_toupper (keysym) : g_ascii_tolower (keysym));
1695 fprintf (stderr, "serial: %x Time: %x\n", x_key_event->serial, x_key_event->time);
1696 #endif /* SPI_DEBUG */
1701 spi_controller_update_key_grabs (SpiDEController *controller,
1702 Accessibility_DeviceEvent *recv)
1705 gboolean update_failed = FALSE;
1706 KeyCode keycode = 0;
1708 g_return_val_if_fail (controller != NULL, FALSE);
1711 * masks known to work with default RH 7.1+:
1712 * 0 (no mods), LockMask, Mod1Mask, Mod2Mask, ShiftMask,
1713 * ShiftMask|LockMask, Mod1Mask|LockMask, Mod2Mask|LockMask,
1714 * ShiftMask|Mod1Mask, ShiftMask|Mod2Mask, Mod1Mask|Mod2Mask,
1715 * ShiftMask|LockMask|Mod1Mask, ShiftMask|LockMask|Mod2Mask,
1717 * ControlMask grabs are broken, must be in use already
1720 keycode = keycode_for_keysym (controller, recv->id, NULL);
1721 for (l = controller->keygrabs_list; l; l = next)
1724 gboolean re_issue_grab;
1725 DEControllerGrabMask *grab_mask = l->data;
1729 re_issue_grab = recv &&
1730 (recv->modifiers & grab_mask->mod_mask) &&
1731 (grab_mask->key_val == keycode);
1734 fprintf (stderr, "mask=%lx %lx (%c%c) %s\n",
1735 (long int) grab_mask->key_val,
1736 (long int) grab_mask->mod_mask,
1737 grab_mask->pending_add ? '+' : '.',
1738 grab_mask->pending_remove ? '-' : '.',
1739 re_issue_grab ? "re-issue": "");
1744 if (grab_mask->pending_add && grab_mask->pending_remove)
1748 else if (grab_mask->pending_remove)
1751 fprintf (stderr, "ungrabbing, mask=%x\n", grab_mask->mod_mask);
1753 XUngrabKey (spi_get_display (),
1755 grab_mask->mod_mask,
1756 gdk_x11_get_default_root_xwindow ());
1760 else if (grab_mask->pending_add || re_issue_grab)
1764 fprintf (stderr, "grab %d with mask %x\n", grab_mask->key_val, grab_mask->mod_mask);
1766 XGrabKey (spi_get_display (),
1768 grab_mask->mod_mask,
1769 gdk_x11_get_default_root_xwindow (),
1773 XSync (spi_get_display (), False);
1774 update_failed = spi_clear_error_state ();
1775 if (update_failed) {
1776 while (grab_mask->ref_count > 0) --grab_mask->ref_count;
1781 grab_mask->pending_add = FALSE;
1782 grab_mask->pending_remove = FALSE;
1786 g_assert (grab_mask->ref_count <= 0);
1788 controller->keygrabs_list = g_list_delete_link (
1789 controller->keygrabs_list, l);
1791 spi_grab_mask_free (grab_mask);
1796 return ! update_failed;
1800 * Implemented GObject::finalize
1803 spi_device_event_controller_object_finalize (GObject *object)
1805 SpiDEController *controller;
1806 DEControllerPrivateData *private;
1807 controller = SPI_DEVICE_EVENT_CONTROLLER (object);
1808 GObjectClass *parent_class = G_OBJECT_CLASS(spi_device_event_controller_parent_class);
1810 fprintf(stderr, "spi_device_event_controller_object_finalize called\n");
1812 /* disconnect any special listeners, get rid of outstanding keygrabs */
1813 XUngrabKey (spi_get_display (), AnyKey, AnyModifier, DefaultRootWindow (spi_get_display ()));
1816 if (controller->xevie_display != NULL)
1818 XevieEnd(controller->xevie_display);
1819 #ifdef SPI_KEYEVENT_DEBUG
1820 printf("XevieEnd(dpy) finished \n");
1825 private = g_object_get_data (G_OBJECT (controller), "spi-dec-private");
1826 if (private->xkb_desc)
1827 XkbFreeKeyboard (private->xkb_desc, 0, True);
1829 parent_class->finalize (object);
1833 * DBus Accessibility::DEController::RegisterKeystrokeListener
1834 * method implementation
1836 static DBusMessage *
1837 impl_register_keystroke_listener (DBusConnection *bus,
1838 DBusMessage *message,
1841 SpiDEController *controller = SPI_DEVICE_EVENT_CONTROLLER(user_data);
1842 DEControllerKeyListener *dec_listener;
1843 DBusMessageIter iter, iter_array;
1845 GSList *keys = NULL;
1846 dbus_int32_t mask, type;
1847 Accessibility_EventListenerMode *mode;
1849 DBusMessage *reply = NULL;
1852 dbus_message_iter_init(message, &iter);
1853 // TODO: verify type signature
1854 dbus_message_iter_get_basic(&iter, &path);
1855 dbus_message_iter_next(&iter);
1856 dbus_message_iter_recurse(&iter, &iter_array);
1857 while (dbus_message_iter_get_arg_type(&iter_array) != DBUS_TYPE_INVALID)
1859 Accessibility_KeyDefinition *kd = (Accessibility_KeyDefinition *)g_malloc(sizeof(Accessibility_KeyDefinition));
1860 if (!spi_dbus_message_iter_get_struct(&iter_array, DBUS_TYPE_INT32, &kd->keycode, DBUS_TYPE_INT32, &kd->keysym, DBUS_TYPE_STRING, &keystring, DBUS_TYPE_INVALID))
1864 kd->keystring = g_strdup (keystring);
1865 keys = g_slist_append(keys, kd);
1867 dbus_message_iter_next(&iter);
1868 dbus_message_iter_get_basic(&iter, &mask);
1869 dbus_message_iter_next(&iter);
1870 if (!strcmp (dbus_message_iter_get_signature (&iter), "u"))
1871 dbus_message_iter_get_basic(&iter, &type);
1874 dbus_message_iter_recurse(&iter, &iter_array);
1875 while (dbus_message_iter_get_arg_type(&iter_array) != DBUS_TYPE_INVALID)
1878 dbus_message_iter_get_basic (&iter_array, &t);
1880 dbus_message_iter_next (&iter_array);
1882 dbus_message_iter_next (&iter_array);
1884 dbus_message_iter_next(&iter);
1885 mode = (Accessibility_EventListenerMode *)g_malloc(sizeof(Accessibility_EventListenerMode));
1888 spi_dbus_message_iter_get_struct(&iter, DBUS_TYPE_BOOLEAN, &mode->synchronous, DBUS_TYPE_BOOLEAN, &mode->preemptive, DBUS_TYPE_BOOLEAN, &mode->global, DBUS_TYPE_INVALID);
1891 fprintf (stderr, "registering keystroke listener %s:%s with maskVal %lu\n",
1892 dbus_message_get_sender(message), path, (unsigned long) mask);
1894 dec_listener = spi_dec_key_listener_new (dbus_message_get_sender(message), path, keys, mask, type, mode);
1895 ret = spi_controller_register_device_listener (
1896 controller, (DEControllerListener *) dec_listener);
1897 reply = dbus_message_new_method_return (message);
1900 dbus_message_append_args (reply, DBUS_TYPE_BOOLEAN, &ret, DBUS_TYPE_INVALID);
1906 * DBus Accessibility::DEController::RegisterDeviceEventListener
1907 * method implementation
1909 static DBusMessage *
1910 impl_register_device_event_listener (DBusConnection *bus,
1911 DBusMessage *message,
1914 SpiDEController *controller = SPI_DEVICE_EVENT_CONTROLLER(user_data);
1915 DEControllerListener *dec_listener;
1918 dbus_int32_t event_types;
1920 DBusMessage *reply = NULL;
1922 dbus_error_init(&error);
1923 if (!dbus_message_get_args(message, &error, DBUS_TYPE_OBJECT_PATH, &path, DBUS_TYPE_UINT32, &event_types, DBUS_TYPE_INVALID))
1925 return droute_invalid_arguments_error (message);
1927 dec_listener = spi_dec_listener_new (dbus_message_get_sender(message), path, event_types);
1928 ret = spi_controller_register_device_listener (
1929 controller, (DEControllerListener *) dec_listener);
1930 reply = dbus_message_new_method_return (message);
1933 dbus_message_append_args (reply, DBUS_TYPE_BOOLEAN, &ret, DBUS_TYPE_INVALID);
1939 DBusConnection *bus;
1940 DEControllerListener *listener;
1941 } RemoveListenerClosure;
1943 static SpiReEntrantContinue
1944 remove_listener_cb (GList * const *list,
1947 DEControllerListener *listener = (*list)->data;
1948 RemoveListenerClosure *ctx = user_data;
1950 if (!strcmp(ctx->listener->bus_name, listener->bus_name) &&
1951 !strcmp(ctx->listener->path, listener->path))
1953 spi_re_entrant_list_delete_link (list);
1954 spi_dbus_remove_disconnect_match (ctx->bus, listener->bus_name);
1955 spi_dec_listener_free (listener);
1958 return SPI_RE_ENTRANT_CONTINUE;
1961 static SpiReEntrantContinue
1962 copy_key_listener_cb (GList * const *list,
1965 DEControllerKeyListener *key_listener = (*list)->data;
1966 RemoveListenerClosure *ctx = user_data;
1968 if (!strcmp(ctx->listener->bus_name, key_listener->listener.bus_name) &&
1969 !strcmp(ctx->listener->path, key_listener->listener.path))
1971 /* TODO: FIXME aggregate keys in case the listener is registered twice */
1972 DEControllerKeyListener *ctx_key_listener =
1973 (DEControllerKeyListener *) ctx->listener;
1974 keylist_free (ctx_key_listener->keys);
1975 ctx_key_listener->keys = keylist_clone(key_listener->keys);
1978 return SPI_RE_ENTRANT_CONTINUE;
1982 spi_controller_deregister_device_listener (SpiDEController *controller,
1983 DEControllerListener *listener)
1985 RemoveListenerClosure ctx;
1987 ctx.bus = controller->bus;
1988 ctx.listener = listener;
1990 spi_re_entrant_list_foreach (&controller->mouse_listeners,
1991 remove_listener_cb, &ctx);
1992 if (!controller->mouse_listeners)
1993 have_mouse_listener = FALSE;
1997 spi_deregister_controller_key_listener (SpiDEController *controller,
1998 DEControllerKeyListener *key_listener)
2000 RemoveListenerClosure ctx;
2002 ctx.bus = controller->bus;
2003 ctx.listener = (DEControllerListener *) key_listener;
2005 /* special case, copy keyset from existing controller list entry */
2006 if (g_slist_length(key_listener->keys) == 0)
2008 spi_re_entrant_list_foreach (&controller->key_listeners,
2009 copy_key_listener_cb, &ctx);
2012 spi_controller_deregister_global_keygrabs (controller, key_listener);
2014 spi_re_entrant_list_foreach (&controller->key_listeners,
2015 remove_listener_cb, &ctx);
2020 spi_remove_device_listeners (SpiDEController *controller, const char *bus_name)
2024 for (l = controller->mouse_listeners; l; l = tmp)
2026 DEControllerListener *listener = l->data;
2028 if (!strcmp (listener->bus_name, bus_name))
2030 spi_controller_deregister_device_listener (controller, listener);
2033 for (l = controller->key_listeners; l; l = tmp)
2035 DEControllerKeyListener *key_listener = l->data;
2037 if (!strcmp (key_listener->listener.bus_name, bus_name))
2039 spi_deregister_controller_key_listener (controller, key_listener);
2045 * DBus Accessibility::DEController::DeregisterKeystrokeListener
2046 * method implementation
2048 static DBusMessage *
2049 impl_deregister_keystroke_listener (DBusConnection *bus,
2050 DBusMessage *message,
2053 SpiDEController *controller = SPI_DEVICE_EVENT_CONTROLLER(user_data);
2054 DEControllerKeyListener *key_listener;
2055 DBusMessageIter iter, iter_array;
2057 GSList *keys = NULL;
2058 dbus_int32_t mask, type;
2059 DBusMessage *reply = NULL;
2061 dbus_message_iter_init(message, &iter);
2062 // TODO: verify type signature
2063 dbus_message_iter_get_basic(&iter, &path);
2064 dbus_message_iter_next(&iter);
2065 dbus_message_iter_recurse(&iter, &iter_array);
2066 while (dbus_message_iter_get_arg_type(&iter_array) != DBUS_TYPE_INVALID)
2068 Accessibility_KeyDefinition *kd = (Accessibility_KeyDefinition *)g_malloc(sizeof(Accessibility_KeyDefinition));
2071 if (!spi_dbus_message_iter_get_struct(&iter_array, DBUS_TYPE_INT32, &kd->keycode, DBUS_TYPE_INT32, &kd->keysym, DBUS_TYPE_STRING, &keystring, DBUS_TYPE_INVALID))
2075 kd->keystring = g_strdup (keystring);
2076 keys = g_slist_append(keys, kd);
2078 dbus_message_iter_next(&iter);
2079 dbus_message_iter_get_basic(&iter, &mask);
2080 dbus_message_iter_next(&iter);
2081 dbus_message_iter_get_basic(&iter, &type);
2082 dbus_message_iter_next(&iter);
2083 key_listener = spi_dec_key_listener_new (dbus_message_get_sender(message), path, keys, mask, type, NULL);
2084 #ifdef SPI_DEREGISTER_DEBUG
2085 fprintf (stderr, "deregistering keystroke listener %p with maskVal %lu\n",
2086 (void *) l, (unsigned long) mask->value);
2089 spi_deregister_controller_key_listener (controller, key_listener);
2091 spi_dec_listener_free ((DEControllerListener *) key_listener);
2092 reply = dbus_message_new_method_return (message);
2097 * DBus Accessibility::DEController::DeregisterDeviceEventListener
2098 * method implementation
2100 static DBusMessage *
2101 impl_deregister_device_event_listener (DBusConnection *bus,
2102 DBusMessage *message,
2105 SpiDEController *controller = SPI_DEVICE_EVENT_CONTROLLER(user_data);
2106 DEControllerListener *listener;
2109 dbus_int32_t event_types;
2110 DBusMessage *reply = NULL;
2112 dbus_error_init(&error);
2113 if (!dbus_message_get_args(message, &error, DBUS_TYPE_OBJECT_PATH, &path, DBUS_TYPE_UINT32, &event_types, DBUS_TYPE_INVALID))
2115 return droute_invalid_arguments_error (message);
2117 listener = spi_dec_listener_new (dbus_message_get_sender(message), path, event_types);
2118 spi_controller_deregister_device_listener (
2119 controller, listener);
2120 reply = dbus_message_new_method_return (message);
2124 static unsigned int dec_xkb_get_slowkeys_delay (SpiDEController *controller)
2126 unsigned int retval = 0;
2127 DEControllerPrivateData *priv = (DEControllerPrivateData *)
2128 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
2130 #ifdef XKB_HAS_GET_SLOW_KEYS_DELAY
2131 retval = XkbGetSlowKeysDelay (spi_get_display (),
2132 XkbUseCoreKbd, &bounce_delay);
2134 if (!(priv->xkb_desc == (XkbDescPtr) BadAlloc || priv->xkb_desc == NULL))
2136 Status s = XkbGetControls (spi_get_display (),
2137 XkbAllControlsMask, priv->xkb_desc);
2140 if (priv->xkb_desc->ctrls->enabled_ctrls & XkbSlowKeysMask)
2141 retval = priv->xkb_desc->ctrls->slow_keys_delay;
2146 #ifdef SPI_XKB_DEBUG
2147 fprintf (stderr, "SlowKeys delay: %d\n", (int) retval);
2152 static unsigned int dec_xkb_get_bouncekeys_delay (SpiDEController *controller)
2154 unsigned int retval = 0;
2155 DEControllerPrivateData *priv = (DEControllerPrivateData *)
2156 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
2158 #ifdef XKB_HAS_GET_BOUNCE_KEYS_DELAY
2159 retval = XkbGetBounceKeysDelay (spi_get_display (),
2160 XkbUseCoreKbd, &bounce_delay);
2162 if (!(priv->xkb_desc == (XkbDescPtr) BadAlloc || priv->xkb_desc == NULL))
2164 Status s = XkbGetControls (spi_get_display (),
2165 XkbAllControlsMask, priv->xkb_desc);
2168 if (priv->xkb_desc->ctrls->enabled_ctrls & XkbBounceKeysMask)
2169 retval = priv->xkb_desc->ctrls->debounce_delay;
2174 #ifdef SPI_XKB_DEBUG
2175 fprintf (stderr, "BounceKeys delay: %d\n", (int) retval);
2181 dec_synth_keycode_press (SpiDEController *controller,
2182 unsigned int keycode)
2184 unsigned int time = CurrentTime;
2185 unsigned int bounce_delay;
2186 unsigned int elapsed_msec;
2188 DEControllerPrivateData *priv =
2189 (DEControllerPrivateData *) g_object_get_qdata (G_OBJECT (controller),
2190 spi_dec_private_quark);
2191 if (keycode == priv->last_release_keycode)
2193 bounce_delay = dec_xkb_get_bouncekeys_delay (controller);
2196 gettimeofday (&tv, NULL);
2198 (tv.tv_sec - priv->last_release_time.tv_sec) * 1000
2199 + (tv.tv_usec - priv->last_release_time.tv_usec) / 1000;
2200 #ifdef SPI_XKB_DEBUG
2201 fprintf (stderr, "%d ms elapsed (%ld usec)\n", elapsed_msec,
2202 (long) (tv.tv_usec - priv->last_release_time.tv_usec));
2204 #ifdef THIS_IS_BROKEN
2205 if (elapsed_msec < bounce_delay)
2206 time = bounce_delay - elapsed_msec + 1;
2208 time = bounce_delay + 10;
2209 /* fudge for broken XTest */
2211 #ifdef SPI_XKB_DEBUG
2212 fprintf (stderr, "waiting %d ms\n", time);
2216 XTestFakeKeyEvent (spi_get_display (), keycode, True, time);
2217 priv->last_press_keycode = keycode;
2218 XFlush (spi_get_display ());
2219 XSync (spi_get_display (), False);
2220 gettimeofday (&priv->last_press_time, NULL);
2225 dec_synth_keycode_release (SpiDEController *controller,
2226 unsigned int keycode)
2228 unsigned int time = CurrentTime;
2229 unsigned int slow_delay;
2230 unsigned int elapsed_msec;
2232 DEControllerPrivateData *priv =
2233 (DEControllerPrivateData *) g_object_get_qdata (G_OBJECT (controller),
2234 spi_dec_private_quark);
2235 if (keycode == priv->last_press_keycode)
2237 slow_delay = dec_xkb_get_slowkeys_delay (controller);
2240 gettimeofday (&tv, NULL);
2242 (tv.tv_sec - priv->last_press_time.tv_sec) * 1000
2243 + (tv.tv_usec - priv->last_press_time.tv_usec) / 1000;
2244 #ifdef SPI_XKB_DEBUG
2245 fprintf (stderr, "%d ms elapsed (%ld usec)\n", elapsed_msec,
2246 (long) (tv.tv_usec - priv->last_press_time.tv_usec));
2248 #ifdef THIS_IS_BROKEN_DUNNO_WHY
2249 if (elapsed_msec < slow_delay)
2250 time = slow_delay - elapsed_msec + 1;
2252 time = slow_delay + 10;
2253 /* our XTest seems broken, we have to add slop as above */
2255 #ifdef SPI_XKB_DEBUG
2256 fprintf (stderr, "waiting %d ms\n", time);
2260 XTestFakeKeyEvent (spi_get_display (), keycode, False, time);
2261 priv->last_release_keycode = keycode;
2262 XSync (spi_get_display (), False);
2263 gettimeofday (&priv->last_release_time, NULL);
2268 dec_get_modifier_state (SpiDEController *controller)
2270 return mouse_mask_state;
2274 dec_lock_modifiers (SpiDEController *controller, unsigned modifiers)
2276 DEControllerPrivateData *priv = (DEControllerPrivateData *)
2277 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
2279 if (priv->have_xkb) {
2280 return XkbLockModifiers (spi_get_display (), XkbUseCoreKbd,
2281 modifiers, modifiers);
2284 for (mod_index=0;mod_index<8;mod_index++)
2285 if (modifiers & (1<<mod_index))
2286 dec_synth_keycode_press(controller, xmkeymap->modifiermap[mod_index]);
2292 dec_unlock_modifiers (SpiDEController *controller, unsigned modifiers)
2294 DEControllerPrivateData *priv = (DEControllerPrivateData *)
2295 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
2297 if (priv->have_xkb) {
2298 return XkbLockModifiers (spi_get_display (), XkbUseCoreKbd,
2302 for (mod_index=0;mod_index<8;mod_index++)
2303 if (modifiers & (1<<mod_index))
2304 dec_synth_keycode_release(controller, xmkeymap->modifiermap[mod_index]);
2310 dec_keysym_for_unichar (SpiDEController *controller, gunichar unichar)
2312 return ucs2keysym ((long) unichar);
2316 dec_synth_keysym (SpiDEController *controller, KeySym keysym)
2318 KeyCode key_synth_code;
2319 unsigned int modifiers, synth_mods, lock_mods;
2321 key_synth_code = keycode_for_keysym (controller, keysym, &synth_mods);
2323 if ((key_synth_code == 0) || (synth_mods == 0xFF)) return FALSE;
2325 /* TODO: set the modifiers accordingly! */
2326 modifiers = dec_get_modifier_state (controller);
2327 /* side-effect; we may unset mousebutton modifiers here! */
2330 if (synth_mods != modifiers) {
2331 lock_mods = synth_mods & ~modifiers;
2332 dec_lock_modifiers (controller, lock_mods);
2334 dec_synth_keycode_press (controller, key_synth_code);
2335 dec_synth_keycode_release (controller, key_synth_code);
2337 if (synth_mods != modifiers)
2338 dec_unlock_modifiers (controller, lock_mods);
2344 dec_synth_keystring (SpiDEController *controller, const char *keystring)
2346 /* probably we need to create and inject an XIM handler eventually. */
2347 /* for now, try to match the string to existing
2348 * keycode+modifier states.
2352 gunichar unichar = 0;
2354 gboolean retval = TRUE;
2357 maxlen = strlen (keystring) + 1;
2358 keysyms = g_new0 (KeySym, maxlen);
2359 if (!(keystring && *keystring && g_utf8_validate (keystring, -1, &c))) {
2364 fprintf (stderr, "[keystring synthesis attempted on %s]\n", keystring);
2366 while (keystring && (unichar = g_utf8_get_char (keystring))) {
2371 mbytes = g_unichar_to_utf8 (unichar, bytes);
2372 bytes[mbytes] = '\0';
2374 fprintf (stderr, "[unichar %s]", bytes);
2376 keysym = dec_keysym_for_unichar (controller, unichar);
2377 if (keysym == NoSymbol) {
2379 fprintf (stderr, "no keysym for %s", bytes);
2384 keysyms[i++] = keysym;
2385 keystring = g_utf8_next_char (keystring);
2388 XSynchronize (spi_get_display (), TRUE);
2389 for (i = 0; keysyms[i]; ++i) {
2390 if (!dec_synth_keysym (controller, keysyms[i])) {
2392 fprintf (stderr, "could not synthesize %c\n",
2399 XSynchronize (spi_get_display (), FALSE);
2408 * DBus Accessibility::DEController::RegisterKeystrokeListener
2409 * method implementation
2411 static DBusMessage * impl_generate_keyboard_event (DBusConnection *bus, DBusMessage *message, void *user_data)
2413 SpiDEController *controller = SPI_DEVICE_EVENT_CONTROLLER(user_data);
2415 dbus_int32_t keycode;
2417 dbus_uint32_t synth_type;
2420 DEControllerPrivateData *priv;
2421 DBusMessage *reply = NULL;
2423 dbus_error_init(&error);
2424 if (!dbus_message_get_args(message, &error, DBUS_TYPE_INT32, &keycode, DBUS_TYPE_STRING, &keystring, DBUS_TYPE_UINT32, &synth_type, DBUS_TYPE_INVALID))
2426 return droute_invalid_arguments_error (message);
2430 fprintf (stderr, "synthesizing keystroke %ld, type %d\n",
2431 (long) keycode, (int) synth_type);
2433 /* TODO: hide/wrap/remove X dependency */
2436 * TODO: when initializing, query for XTest extension before using,
2437 * and fall back to XSendEvent() if XTest is not available.
2440 gdk_error_trap_push ();
2442 priv = (DEControllerPrivateData *)
2443 g_object_get_qdata (G_OBJECT (controller), spi_dec_private_quark);
2445 if (!priv->have_xkb && xmkeymap==NULL) {
2446 xmkeymap = XGetModifierMapping(spi_get_display ());
2451 case Accessibility_KEY_PRESS:
2452 dec_synth_keycode_press (controller, keycode);
2454 case Accessibility_KEY_PRESSRELEASE:
2455 dec_synth_keycode_press (controller, keycode);
2456 case Accessibility_KEY_RELEASE:
2457 dec_synth_keycode_release (controller, keycode);
2459 case Accessibility_KEY_SYM:
2460 #ifdef SPI_XKB_DEBUG
2461 fprintf (stderr, "KeySym synthesis\n");
2464 * note: we are using long for 'keycode'
2465 * in our arg list; it can contain either
2466 * a keycode or a keysym.
2468 dec_synth_keysym (controller, (KeySym) keycode);
2470 case Accessibility_KEY_STRING:
2471 if (!dec_synth_keystring (controller, keystring))
2472 fprintf (stderr, "Keystring synthesis failure, string=%s\n",
2476 if (synth_type == Accessibility_KEY_SYM) {
2480 keysym = XkbKeycodeToKeysym (spi_get_display (), keycode, 0, 0);
2482 if (XkbKeysymToModifiers (spi_get_display (), keysym) == 0)
2484 spi_dec_clear_unlatch_pending (controller);
2486 reply = dbus_message_new_method_return (message);
2490 /* Accessibility::DEController::GenerateMouseEvent */
2491 static DBusMessage * impl_generate_mouse_event (DBusConnection *bus, DBusMessage *message, void *user_data)
2497 DBusMessage *reply = NULL;
2499 gboolean err = FALSE;
2500 Display *display = spi_get_display ();
2502 dbus_error_init (&error);
2503 if (!dbus_message_get_args(message, &error, DBUS_TYPE_INT32, &x, DBUS_TYPE_INT32, &y, DBUS_TYPE_STRING, &eventName, DBUS_TYPE_INVALID))
2505 return droute_invalid_arguments_error (message);
2509 fprintf (stderr, "generating mouse %s event at %ld, %ld\n",
2510 eventName, (long int) x, (long int) y);
2512 switch (eventName[0])
2515 switch (eventName[1])
2517 /* TODO: check number of buttons before parsing */
2538 if (x != -1 && y != -1)
2540 XTestFakeMotionEvent (display, DefaultScreen (display),
2543 XTestFakeButtonEvent (display, button, !(eventName[2] == 'r'), 0);
2544 if (eventName[2] == 'c')
2545 XTestFakeButtonEvent (display, button, FALSE, 1);
2546 else if (eventName[2] == 'd')
2548 XTestFakeButtonEvent (display, button, FALSE, 1);
2549 XTestFakeButtonEvent (display, button, TRUE, 2);
2550 XTestFakeButtonEvent (display, button, FALSE, 3);
2554 case 'r': /* relative motion */
2555 XTestFakeRelativeMotionEvent (display, x, y, 0);
2557 case 'a': /* absolute motion */
2558 XTestFakeMotionEvent (display, DefaultScreen (display),
2562 reply = dbus_message_new_method_return (message);
2566 /* Accessibility::DEController::NotifyListenersSync */
2567 static DBusMessage *
2568 impl_notify_listeners_sync (DBusConnection *bus, DBusMessage *message, void *user_data)
2570 SpiDEController *controller = SPI_DEVICE_EVENT_CONTROLLER(user_data);
2571 Accessibility_DeviceEvent event;
2573 DBusMessage *reply = NULL;
2575 if (!spi_dbus_demarshal_deviceEvent(message, &event))
2577 return droute_invalid_arguments_error (message);
2580 g_print ("notifylistening listeners synchronously: controller %p, event id %d\n",
2581 controller, (int) event.id);
2583 ret = spi_controller_notify_keylisteners (controller,
2584 (Accessibility_DeviceEvent *)
2587 reply = dbus_message_new_method_return (message);
2590 dbus_message_append_args (reply, DBUS_TYPE_BOOLEAN, &ret, DBUS_TYPE_INVALID);
2595 static DBusMessage *
2596 impl_notify_listeners_async (DBusConnection *bus, DBusMessage *message, void *user_data)
2598 SpiDEController *controller = SPI_DEVICE_EVENT_CONTROLLER(user_data);
2599 Accessibility_DeviceEvent event;
2600 DBusMessage *reply = NULL;
2602 if (!spi_dbus_demarshal_deviceEvent(message, &event))
2604 return droute_invalid_arguments_error (message);
2607 g_print ("notifylistening listeners asynchronously: controller %p, event id %d\n",
2608 controller, (int) event.id);
2610 spi_controller_notify_keylisteners (controller, (Accessibility_DeviceEvent *)
2612 reply = dbus_message_new_method_return (message);
2617 spi_device_event_controller_class_init (SpiDEControllerClass *klass)
2619 GObjectClass * object_class = (GObjectClass *) klass;
2621 spi_device_event_controller_parent_class = g_type_class_peek_parent (klass);
2623 object_class->finalize = spi_device_event_controller_object_finalize;
2625 if (!spi_dec_private_quark)
2626 spi_dec_private_quark = g_quark_from_static_string ("spi-dec-private");
2630 static Bool isEvent(Display *dpy, XEvent *event, char *arg)
2636 handle_io (GIOChannel *source,
2637 GIOCondition condition,
2640 SpiDEController *controller = (SpiDEController *) data;
2641 gboolean is_consumed = FALSE;
2644 while (XCheckIfEvent(controller->xevie_display, &ev, isEvent, NULL))
2646 if (ev.type == KeyPress || ev.type == KeyRelease)
2647 is_consumed = spi_device_event_controller_forward_key_event (controller, &ev);
2650 XevieSendEvent(controller->xevie_display, &ev, XEVIE_UNMODIFIED);
2655 #endif /* HAVE_XEVIE */
2658 spi_device_event_controller_init (SpiDEController *device_event_controller)
2663 #endif /* HAVE_XEVIE */
2665 DEControllerPrivateData *private;
2666 device_event_controller->key_listeners = NULL;
2667 device_event_controller->mouse_listeners = NULL;
2668 device_event_controller->keygrabs_list = NULL;
2669 device_event_controller->xevie_display = NULL;
2672 device_event_controller->xevie_display = XOpenDisplay(NULL);
2674 if (XevieStart(device_event_controller->xevie_display) == TRUE)
2676 #ifdef SPI_KEYEVENT_DEBUG
2677 fprintf (stderr, "XevieStart() success \n");
2679 XevieSelectInput(device_event_controller->xevie_display, KeyPressMask | KeyReleaseMask);
2681 fd = ConnectionNumber(device_event_controller->xevie_display);
2682 ioc = g_io_channel_unix_new (fd);
2683 g_io_add_watch (ioc, G_IO_IN | G_IO_HUP, handle_io, device_event_controller);
2684 g_io_channel_unref (ioc);
2688 device_event_controller->xevie_display = NULL;
2689 #ifdef SPI_KEYEVENT_DEBUG
2690 fprintf (stderr, "XevieStart() failed, only one client is allowed to do event int exception\n");
2693 #endif /* HAVE_XEVIE */
2695 private = g_new0 (DEControllerPrivateData, 1);
2696 gettimeofday (&private->last_press_time, NULL);
2697 gettimeofday (&private->last_release_time, NULL);
2698 g_object_set_qdata (G_OBJECT (device_event_controller),
2699 spi_dec_private_quark,
2701 spi_controller_register_with_devices (device_event_controller);
2705 spi_device_event_controller_forward_key_event (SpiDEController *controller,
2706 const XEvent *event)
2708 Accessibility_DeviceEvent key_event;
2711 g_assert (event->type == KeyPress || event->type == KeyRelease);
2713 key_event = spi_keystroke_from_x_key_event ((XKeyEvent *) event);
2715 if (controller->xevie_display == NULL)
2716 spi_controller_update_key_grabs (controller, &key_event);
2718 /* relay to listeners, and decide whether to consume it or not */
2719 ret = spi_controller_notify_keylisteners (controller, &key_event, TRUE);
2720 g_free(key_event.event_string);
2726 is_key_released (KeyCode code)
2731 XQueryKeymap (spi_get_display (), keys);
2732 down = BIT (keys, code);
2737 check_release (gpointer data)
2740 Accessibility_DeviceEvent *event = (Accessibility_DeviceEvent *)data;
2741 KeyCode code = event->hw_code;
2743 released = is_key_released (code);
2747 check_release_handler = 0;
2748 event->type = Accessibility_KEY_RELEASED_EVENT;
2749 spi_controller_notify_keylisteners (saved_controller, event, TRUE);
2751 return (released == 0);
2754 static void wait_for_release_event (XEvent *event,
2755 SpiDEController *controller)
2757 pressed_event = spi_keystroke_from_x_key_event ((XKeyEvent *) event);
2758 saved_controller = controller;
2759 check_release_handler = g_timeout_add (CHECK_RELEASE_DELAY, check_release, &pressed_event);
2762 static DRouteMethod dev_methods[] =
2764 { impl_register_keystroke_listener, "RegisterKeystrokeListener" },
2765 { impl_register_device_event_listener, "RegisterDeviceEventListener" },
2766 { impl_deregister_keystroke_listener, "DeregisterKeystrokeListener" },
2767 { impl_deregister_device_event_listener, "DeregisterDeviceEventListener" },
2768 { impl_generate_keyboard_event, "GenerateKeyboardEvent" },
2769 { impl_generate_mouse_event, "GenerateMouseEvent" },
2770 { impl_notify_listeners_sync, "NotifyListenersSync" },
2771 { impl_notify_listeners_async, "NotifyListenersAsync" },
2776 spi_registry_dec_new (SpiRegistry *reg, DBusConnection *bus, DRouteContext *droute)
2778 SpiDEController *dec = g_object_new (SPI_DEVICE_EVENT_CONTROLLER_TYPE, NULL);
2781 dec->registry = g_object_ref (reg);
2784 path = droute_add_one (droute,
2788 droute_path_add_interface (path,
2789 SPI_DBUS_INTERFACE_DEC,
2793 spi_dec_init_mouse_listener (dec);
2794 /* TODO: kill mouse listener on finalize */
2800 spi_device_event_controller_start_poll_mouse (SpiRegistry *registry)
2802 if (!have_mouse_event_listener)
2804 have_mouse_event_listener = TRUE;
2805 if (!have_mouse_listener)
2806 g_timeout_add (100, spi_dec_poll_mouse_idle, registry);
2811 spi_device_event_controller_stop_poll_mouse (void)
2813 have_mouse_event_listener = FALSE;